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Tissue engineering is an interdisciplinary field promising new therapeutic means for replacing lost or severely damaged tissues or organs. However, the fabrication of complex engineered tissues has been hampered due to the lack of vascularization to provide sufficient blood supply after implantation. In this article, we propose using rapid prototyping technology to prefabricate a scaffold with an inside hollowed vascular system including an arterial end, a venous end and capillary networks between them. The scaffold will be ’’printed’’ layer by layer. When printing every layer, a ’’low-melting point’’ material will be used to form a blood vessel network and a tissue-specific material will be used outside it. Hereafter the ‘low-melting point’ material will be evacuated by vaporization to ensure a hollowed vessel network. Then the inside hollowed capillary network can be endothelialized by using autologous endothelial cells in a cycling bioreactor while the outside material can be embedded with tissue-special cells. In the end, the new vascularized autologous grafts could be transferred to the defect site by using microsurgical techniques to connect the grafts with the host artery and vein. The strategy would facilitate construction of complex tissue engineering if the hypothesis proved to be practical.
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篇名 为在 vitro 设计 vascularized 接枝的新奇策略
来源期刊 世界干细胞杂志:英文版(电子版) 学科 医学
关键词 TISSUE engineering VASCULARIZATION STEM cell Biomaterial CAPILLARY network
年,卷(期) 2010,(4) 所属期刊栏目
研究方向 页码范围 93-96
页数 4页 分类号 R318.1
字数 语种
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研究主题发展历程
节点文献
TISSUE
engineering
VASCULARIZATION
STEM
cell
Biomaterial
CAPILLARY
network
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研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
世界干细胞杂志:英文版(电子版)
月刊
1948-0210
北京市朝阳区东四环中路62号楼远洋国际中
出版文献量(篇)
526
总下载数(次)
0
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0
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